Accumulation of DNA damage leading to adult stem cell exhaustion has been proposed to be a principal mechanism of aging. Here we tested this hypothesis in healthy individuals of different ages by examining unrepaired DNA double-strand breaks (DSBs) in hematopoietic stem/progenitor cells matured in their physiological microenvironment. hybridization we show that γH2AX-foci co-localize consistently with other repair factors such as pATM, MDC1 and 53BP1, but not significantly with telomeres, strongly supporting the telomere-independent origin for the majority of foci. The highest inter-individual variations for non-telomeric DNA damage were observed in middle-aged donors, whereas the individual DSB repair capacity appears to determine the exte...
Telomere shortening limits the proliferative capacity of human cells, and age-dependent shortening o...
Global populations are shifting, and the number of individuals over the age of 60 is rapidly increas...
Telomeres progressively shorten with age, and it has been proposed that critically short and dysfunc...
Accumulation of DNA damage leading to adult stem cell exhaustion has been proposed to be a principal...
SummaryHematopoietic stem cells (HSCs) maintain homeostasis and regenerate the blood system througho...
Hematopoietic stem cells (HSCs) maintain homeostasis and regenerate the blood system throughout life...
DNA damage is deleterious to all cells, but especially to stem cells because they maintain tissue in...
A diminished capacity to maintain tissue homeostasis is a central physiological characteristic of ag...
The aging of tissue-specific stem and progenitor cells is believed to be central to the pathophysiol...
Aging in the hematopoietic system and the stem cell niche contributes to aging-associated phenotypes...
<div><p>Accumulation of DNA damage leading to stem cell exhaustion has been proposed to be a princip...
Accumulation of DNA damage leading to stem cell exhaustion has been proposed to be a principal mecha...
SummaryWhether aged hematopoietic stem and progenitor cells (HSPCs) have impaired DNA damage repair ...
Aging is characterized by the progressive deregulation of homeostatic mechanisms causing the accumul...
Item does not contain fulltextImpairment of stem cell function contributes to the progressive deteri...
Telomere shortening limits the proliferative capacity of human cells, and age-dependent shortening o...
Global populations are shifting, and the number of individuals over the age of 60 is rapidly increas...
Telomeres progressively shorten with age, and it has been proposed that critically short and dysfunc...
Accumulation of DNA damage leading to adult stem cell exhaustion has been proposed to be a principal...
SummaryHematopoietic stem cells (HSCs) maintain homeostasis and regenerate the blood system througho...
Hematopoietic stem cells (HSCs) maintain homeostasis and regenerate the blood system throughout life...
DNA damage is deleterious to all cells, but especially to stem cells because they maintain tissue in...
A diminished capacity to maintain tissue homeostasis is a central physiological characteristic of ag...
The aging of tissue-specific stem and progenitor cells is believed to be central to the pathophysiol...
Aging in the hematopoietic system and the stem cell niche contributes to aging-associated phenotypes...
<div><p>Accumulation of DNA damage leading to stem cell exhaustion has been proposed to be a princip...
Accumulation of DNA damage leading to stem cell exhaustion has been proposed to be a principal mecha...
SummaryWhether aged hematopoietic stem and progenitor cells (HSPCs) have impaired DNA damage repair ...
Aging is characterized by the progressive deregulation of homeostatic mechanisms causing the accumul...
Item does not contain fulltextImpairment of stem cell function contributes to the progressive deteri...
Telomere shortening limits the proliferative capacity of human cells, and age-dependent shortening o...
Global populations are shifting, and the number of individuals over the age of 60 is rapidly increas...
Telomeres progressively shorten with age, and it has been proposed that critically short and dysfunc...